Max Planck Institute of Molecular Cell Biology and Genetics, Pfotenhauerstrasse 108, D-01307 Dresden, Germany.
Development. 2014 Mar;141(6):1381-91. doi: 10.1242/dev.093435.
How signaling gradients supply positional information in a field of moving cells is an unsolved question in patterning and morphogenesis. Here, we ask how a Wnt signaling gradient regulates the dynamics of a wavefront of cellular change in a flow of cells during somitogenesis. Using time-controlled perturbations of Wnt signaling in the zebrafish embryo, we changed segment length without altering the rate of somite formation or embryonic elongation. This result implies specific Wnt regulation of the wavefront velocity. The observed Wnt signaling gradient dynamics and timing of downstream events support a model for wavefront regulation in which cell flow plays a dominant role in transporting positional information.
在模式形成和形态发生过程中,信号梯度如何为移动细胞场提供位置信息,这是一个尚未解决的问题。在这里,我们想知道 Wnt 信号梯度如何调节在体节发生过程中细胞流中细胞变化波前的动力学。我们在斑马鱼胚胎中使用时间控制的 Wnt 信号干扰,在不改变体节形成或胚胎伸长速度的情况下改变体节长度。这一结果表明 Wnt 对波前速度的特异性调节。观察到的 Wnt 信号梯度动力学和下游事件的时间支持了一种波前调节模型,其中细胞流在传递位置信息方面发挥主导作用。